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  • 于會香, 邵肖靜, 張靜, 王新華. 采用ASPEX掃描電鏡研究鋼中總氧和非金屬夾雜物的定量關系[J]. 工程科學學報, 2015, 37(S1): 35-44. DOI: 10.13374/j.issn2095-9389.2015.s1.007
    引用本文: 于會香, 邵肖靜, 張靜, 王新華. 采用ASPEX掃描電鏡研究鋼中總氧和非金屬夾雜物的定量關系[J]. 工程科學學報, 2015, 37(S1): 35-44. DOI: 10.13374/j.issn2095-9389.2015.s1.007
    YU Hui-xiang, SHAO Xiao-jing, ZHANG Jing, WANG Xin-hua. Study on the quantitative relationship between total oxygen content and non-metallic inclusion in steel with ASPEX SEM[J]. Chinese Journal of Engineering, 2015, 37(S1): 35-44. DOI: 10.13374/j.issn2095-9389.2015.s1.007
    Citation: YU Hui-xiang, SHAO Xiao-jing, ZHANG Jing, WANG Xin-hua. Study on the quantitative relationship between total oxygen content and non-metallic inclusion in steel with ASPEX SEM[J]. Chinese Journal of Engineering, 2015, 37(S1): 35-44. DOI: 10.13374/j.issn2095-9389.2015.s1.007

    采用ASPEX掃描電鏡研究鋼中總氧和非金屬夾雜物的定量關系

    Study on the quantitative relationship between total oxygen content and non-metallic inclusion in steel with ASPEX SEM

    • 摘要: 為了弄清鋼中總氧(T.O)和非金屬夾雜物的量、尺寸之間的關系,本文選取四類鋼種正常生產的鑄坯,采用能進行大面積試樣檢測的ASPEX自動掃描電鏡系統研究了鋼中的T.O、夾雜物及兩者之間的定量關系,并采用Thermo-calc熱力學軟件進行了計算和驗證.結果表明:夾雜物的主要組成與鋼的生產工藝有很大關系.隨著夾雜物尺寸的增加,單位檢測面積上該尺寸范圍的夾雜物數量顯著減少.與T.O<0.002%的鋼種相比,T.O為0.01%的鋼中夾雜物的數量、面積均明顯增加.當T.O<0.002%時,T.O與夾雜物的面積表現出較好的對應關系.相比于夾雜物的數量來說,T.O更準確的表征夾雜物的面積.大型夾雜物的出現具有偶然性.實驗結果與熱力學計算結果、鋼中氧硫含量吻合很好.

       

      Abstract: The total oxygen content(T. O),non-metallic inclusions and the relationship between them in pipeline steel,gear steel,tire cord steel and Q235 steel,which were taken from industrial products,were systematically investigated by ASPEX automatic scanning electron microscope(SEM),which can scan large area metallographic specimen,and thermodynamic software Thermo-Calc was used to calculate and validate. The obtained results indicate that non-metallic inclusions are greatly influenced by the production process of steel. With the inclusion size increasing,the amount of inclusions in this size range decreases. Both quantity and area of inclusions increase sharply when T. O increases from less than 0.002% to 0.01%. When T. O is lower than 0.002%,it only shows good positive relationship with the area of all inclusions per square mm steel samples. T. O indicates the area of inclusions in steel more accurately than the quantity of inclusions. Large sized inclusions appear accidentally. The experimental results agree very well with thermodynamic calculations and the content of T. O,S in steel.

       

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